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点击化学介导的 NK 细胞-肿瘤细胞膜结合中免疫突触增强及 NK 细胞治疗抗肿瘤疗效的提升

英文原题:Click Chemistry Mediated Immune Synapse Augmentation in Natural Killer Cell-Cancer Membrane Engagement and Facilitated Anticancer Efficacies of Natural Killer Cell Therapy.

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Click Chemistry Mediated Immune Synapse Augmentation in Natural Killer Cell-Cancer Membrane Engagement and Facilitated Anticancer Efficacies of Natural Killer Cell Therapy.

PubMed 2026/06/09(内容时间) Biomater Res Q1 · IF 9.8(JCR 2025)

研究概要

非小细胞肺癌因侵袭性转移和有限的治疗手段,仍是重大的临床挑战。

中文摘要

非小细胞肺癌因转移侵袭性强、治疗手段有限,仍是重要临床挑战。自然杀伤(NK)细胞具有先天细胞毒性,能够以不依赖抗原的方式清除恶性细胞,因此在癌症免疫治疗中备受关注。然而,NK细胞治疗实体瘤的效果受到三方面严重限制:(a)肿瘤异质性;(b)肿瘤微环境中的物理屏障;(c)肿瘤靶向特异性不足。为应对这些挑战,我们开发了一种脂质生物材料,可同时对癌细胞和NK细胞进行表面工程化,增强二者在复杂肿瘤微环境中的物理接触。该脂质材料由稳定锚定细胞表面的脂质基团,以及互补的二苯并环辛炔(DBCO)和叠氮基(N₃)官能团组成,后两者可通过生物正交点击反应介导细胞间相互作用。这一模块化设计可快速、非遗传性地改造细胞表面,通过DBCO-N₃点击反应促进肿瘤特异性靶向,同时增强NK细胞活化和细胞毒功能。使用脂质-N₃和脂质-DBCO分别对非小细胞肺癌细胞(N₃-癌细胞)和NK细胞(D-NK)进行表面工程化,显著改善了癌细胞识别、免疫活化及NK细胞介导的细胞毒性。此外,脂质-N₃成功标记了嵌入胶原水凝胶、可模拟天然肺组织结构的三维肺肿瘤样体;其与D-NK细胞相互作用后产生更强的抗肿瘤效果。总体而言,这一脂质生物材料策略提供了一种用途广泛、不依赖受体的手段,可增强NK细胞对抗异质性实体瘤的免疫治疗效果,无需依赖预先确定的肿瘤特异性配体-受体组合。

展开英文摘要原文

Non-small cell lung cancer remains a major clinical challenge due to aggressive metastasis and limited therapeutic modalities. The innate cytotoxicity of natural killer (NK) cells and their ability to eliminate malignant cells in an antigen-independent manner have attracted considerable interest for cancer immunotherapy. However, the therapeutic performance of NK cells in solid tumors is severely constrained by (a) tumor heterogeneity, (b) physical barriers within the tumor microenvironment, and (c) insufficient tumor-targeting specificity. To address these challenges, we here develop a lipid biomaterial that enables the simultaneous surface engineering of cancer and NK cells to enhance their physical engagement within complex tumor microenvironments. The developed lipid biomaterials are composed of (a) a lipid moiety for stable surface anchoring and (2) complementary dibenzocyclooctyne (DBCO) and azide (N 3 ) functional groups to mediate bioorthogonal click-reaction-driven cell-cell interactions. This modular design allows the rapid and non-genetic engineering of cell surfaces, promoting tumor-specific targeting through DBCO-N 3 click reactions, while simultaneously enhancing NK cell activation and cytotoxic function. Surface engineering of non-small cell lung cancer cells (N 3 -cancer) and NK cells (D-NK) using lipid-N 3 and lipid-DBCO substantially improved cancer recognition, immune activation, and NK cell-mediated cytotoxicity. Moreover, lipid-N 3 successfully labeled 3-dimensional lung tumoroids embedded in collagen hydrogels that recapitulate the structure of native lung tissue, leading to superior antitumor efficacy upon interaction with D-NK cells. Collectively, this lipid-biomaterial-based strategy provides a versatile, receptor-independent approach to augment NK cell-based immunotherapy against heterogeneous solid tumors, offering a promising approach that avoids reliance on predefined tumor-specific ligand-receptor pairs.

论文信息

作者
Noh KM、Jangid AK、Kim E、Kim K
单位
Department of Chemical and Biochemical Engineering, Dongguk University, Seoul, Republic of Korea.South Korea
期刊
Biomaterials research2026
原文标识
PubMed 42272934 · DOI 10.34133/bmr.0376